Abstract:
A method for automatically generating swath paths and navigating a vehicle along the generated swath paths using a controller includes the steps of: marking a plurality of field boundary points; storing the field boundary points in a memory unit of the vehicle; generating a field boundary defining the plurality of field boundary points connected to one another; selecting an edge of the field boundary as a base swath path; generating a plurality of subsequent swath paths from the base swath path; measuring a set of parameters of the vehicle; and automatically selecting one of the subsequent swath paths for the vehicle to follow based on the set of parameters.
Abstract:
A method of operating an agricultural implement in a geographic area using data representing at least one attribute associated with seed, includes the steps of: transferring data including at least one attribute associated with seed to a remote computer which is located remote from the geographic area; editing the data at the remote computer; uploading the analyzed data to an electrical processing circuit associated with the implement; and operating the implement under control of the electrical processing circuit within the geographic area, using the uploaded data.
Abstract:
An agricultural system including a vehicle, a controller and a display mounted in the vehicle. The display is coupled to the controller. The controller is configured to interact with a user by way of the display using a card manager system. The card manager system is configured to display a hierarchy of setup selections on the display using a plurality of setup cards displayed in a hierarchical manner thereby implying dependency between underlying setup criteria of equipment represented by said setup cards.
Abstract:
An overlap control system includes an agricultural vehicle control system operable to utilize a product delay (PD) value in seconds, a start early (SE) distance, and/or a stop late (SL) distance to determine at least one offset edge from a location of an agricultural implement. The agricultural vehicle control system is operable to look ahead along a guidance swath or at least one predicted path of the agricultural implement, and to determine that an intercept will occur between the at least one offset edge and a boundary along the guidance swath or predicted path. The agricultural vehicle control system is further operable to calculate a distance or time to the intercept, and to send a command to change an on/off state of the agricultural implement in the calculated distance or time.
Abstract:
An agricultural implement arrangement includes a container of seed having an ID tag associated therewith; an implement for applying a product to a geographic area; an electrical reader configured for reading the ID tag and providing an output signal; and an electrical processing circuit coupled with the reader and the implement. The ID tag has data representing at least one attribute associated with the seed. The electrical processing circuit receives the output signal and controls the implement, dependent upon the output signal.
Abstract:
An agricultural system including a vehicle, a controller; and a display mounted in the vehicle. The display is coupled to the controller and has a display area. The controller is configured to: present a bottom bar along at least a portion of a bottom of the display area; section the bottom bar into a status drawer and a shortcuts drawer; and expand either the status drawer or the shortcuts drawer with an upward motion or a tap on a portion the drawers.
Abstract:
An agricultural system including a vehicle, a controller and a display mounted in the vehicle, and an implement coupled to the vehicle. The display is coupled to the controller, and the controller is configured to: identify a system configuration of the vehicle; identify a system configuration of the implement; load and render on the display a selected user interface dependent upon the system configuration of the vehicle and the system configuration of the implement; and provide a tutorial mode with navigational aids to complete setup data for the agricultural system relative to the system configuration of the vehicle and the system configuration of the implement.
Abstract:
A method for automatically generating swath paths and navigating a vehicle along the generated swath paths using a controller includes the steps of: marking a plurality of field boundary points; storing the field boundary points in a memory unit of the vehicle; generating a field boundary defining the plurality of field boundary points connected to one another; selecting an edge of the field boundary as a base swath path; generating a plurality of subsequent swath paths from the base swath path; measuring a set of parameters of the vehicle; and automatically selecting one of the subsequent swath paths for the vehicle to follow based on the set of parameters.
Abstract:
An agricultural implement arrangement includes a container of seed having an ID tag associated therewith; an implement for applying a product to a geographic area; an electrical reader configured for reading the ID tag and providing an output signal; and an electrical processing circuit coupled with the reader and the implement. The ID tag has data representing at least one attribute associated with the seed. The electrical processing circuit receives the output signal and controls the implement, dependent upon the output signal.
Abstract:
An agricultural system including a vehicle, a product delivery system, a controller and a display mounted in the vehicle, the controller is in controlling communication with the product delivery system. The controller is configured to interact with a user by way of the display. The controller being configured to display product delivery information on the display and to allow the user to modify product delivery rates, product selections and/or sources for product by way of a continuously linked selection process.